Modulation of magneto-dynamic properties of permalloy/holmium heterostructures with antiferromagnetic coupled interface

Author:

Tian Mingming1ORCID,Chen Qian1ORCID,Wong Ping Kwan Johnny2ORCID,Liu Ruobai3ORCID,Silly Fabien4ORCID,Silly Mathieu G.5ORCID,Ohresser Philippe5ORCID,You Biao3,Du Jun3ORCID,Wee Andrew T. S.67ORCID,Rojas-Sánchez Juan-Carlos8ORCID,Huang Zhaocong1ORCID,Zhang Wen1ORCID,Zhai Ya13ORCID

Affiliation:

1. Key Laboratory of Quantum Materials and Devices of Ministry of Education, School of Physics, Southeast University 1 , Nanjing 211189, China

2. School of Microelectronics, Northwestern Polytechnical University 2 , Xi'an 710072, China

3. National Laboratory of Solid Microstructures, Nanjing University 3 , Nanjing 210093, China

4. Université Paris-Saclay, CEA, CNRS, SPEC, TITANS 4 , F-91191 Gif sur Yvette, France

5. Synchrotron SOLEIL 5 , L'orme des Merisiers, Saint-Aubin-BP 48, 91192 Gif sur Yvette, France

6. Department of Physics, National University of Singapore 6 , 2 Science Drive 3, Singapore 117551, Singapore

7. Centre for Advanced 2D Materials, National University of Singapore 7 , 6 Science Drive 2, Singapore 117546, Singapore

8. Université de Lorraine, CNRS UMR 7198, Institut Jean Lamour 8 , F-54011 Nancy, France

Abstract

Magneto-dynamics and its interfacial modulation have attracted much attention in energy-efficient and nonvolatile spintronic devices. In particular, the antiferromagnetic coupling at the interface plays a crucial role in spin dynamic behaviors. In this work, we utilize rare-earth holmium (Ho) to interface with transition-metal alloy Ni80Fe20(Py) and achieve a naturally formed antiferromagnetic coupling between Py and interfacial Ho via the magnetic proximity effect, as confirmed by element-specific synchrotron radiation x-ray magnetic circular dichroism hysteresis loops. Importantly, the antiferromagnetic coupled interface is preserved even at a low temperature of 4.2 K, which is below the Curie temperature of Ho. Using ferromagnetic resonance analysis, we reveal that the Gilbert damping and the interfacial spin mixing conductance of the Py/Ho bilayers are much larger than those of the Py/Pt and Py/Pd, suggesting a superior spin transparent efficiency on such an interface with an antiferromagnetic coupling. More importantly, upon the insertion of 2-nm-thick Cu, the antiferromagnetic coupling disappears, associated with the evident suppression of Gilbert damping. This strengthens the critical role of the antiferromagnetic coupled interface in the magneto-dynamics of the transition-metal/rare-earth bilayers and provides a promising way of magneto-dynamics modulation in antiferromagnet-based devices.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Shaanxi Province

Natural Science Foundation of Chongqing Municipality

the LabEx PALM

Publisher

AIP Publishing

Subject

Physics and Astronomy (miscellaneous)

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